Review Conceptual Example 8 before starting this problem. Á block is attached to a horiżontal spring and oscillates back and forth on a frictionless horizontal surface at a frequency of 4.18 Hz. The amplitude of the motion is 7.40 x 10-2 m. At the point where the block has its maximum speed, it suddenly splits into two identical parts, only one part remaining attached to the spring. (a) What is the amplitude and (b) the frequency of the simple harmonic motion that exists after the block splits?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter12: Oscillatory Motion
Section: Chapter Questions
Problem 21P: A 50.0-g object connected to a spring with a force constant of 35.0 N/m oscillates with an amplitude...
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Review Conceptual Example 8 before starting
this problem. Á block is attached to a
horiżontal spring and oscillates back and forth
on a frictionless horizontal surface at a
frequency of 4.18 Hz. The amplitude of the
motion is 7.40 x 10-2 m. At the point where
the block has its maximum speed, it suddenly
splits into two identical parts, only one part
remaining attached to the spring. (a) What is
the amplitude and (b) the frequency of the
simple harmonic motion that exists after the
block splits?
Transcribed Image Text:Review Conceptual Example 8 before starting this problem. Á block is attached to a horiżontal spring and oscillates back and forth on a frictionless horizontal surface at a frequency of 4.18 Hz. The amplitude of the motion is 7.40 x 10-2 m. At the point where the block has its maximum speed, it suddenly splits into two identical parts, only one part remaining attached to the spring. (a) What is the amplitude and (b) the frequency of the simple harmonic motion that exists after the block splits?
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